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Effects of Isoflurane and Propofol on Glutamate and GABA Transporters in Isolated Cortical Nerve Terminals
Authors:Westphalen  Robert I PhD; Hemmings  Hugh C Jr  MD  PhD&#x;
Institution:Westphalen, Robert I. Ph.D.*; Hemmings, Hugh C. Jr., M.D., Ph.D.?
Abstract:Background: Depression of glutamate-mediated excitatory transmission and potentiation of gamma]-aminobutyric acid (GABA)-mediated inhibitory transmission appear to be primary mechanisms by which general anesthetics produce anesthesia. Since effects on transmitter transport have been implicated in anesthetic actions, the authors examined the sensitivity of presynaptic glutamate and GABA transporters to the effects of a representative volatile (isoflurane) and a representative intravenous (propofol) anesthetic.

Methods: A dual-isotope (l-3H]glutamate and 14C]GABA) approach allowed simultaneous comparisons of anesthetic effects on three independent assays of glutamate and GABA transporters in adult rat cerebral cortex: transmitter uptake into isolated nerve terminals (synaptosomes), transmitter binding to lysed and washed synaptosomes (synaptic membranes), and carrier-mediated release (reverse transport) of transmitter from preloaded synaptosomes using a modified superfusion system.

Results: Isoflurane produced small but statistically significant inhibition of l-3H]glutamate and 14C]GABA uptake, while propofol had no effect. Inhibition of uptake by isoflurane was noncompetitive, an outcome that was mimicked by indirectly affecting transporter function through synaptosomal depolarization. Neither isoflurane nor propofol affected l-3H]glutamate or 14C]GABA binding to synaptic membranes or Ca2+-independent carrier-mediated l-3H]glutamate or 14C]GABA release (reverse transport).

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点击此处可从《The Journal of the American Society of Anesthesiologists》浏览原始摘要信息
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